Mini Atom Server Appliance (Optional Rackmount kit)
Short-Depth 1U Atom Server Appliance with 4 drive bays, 1x PCIe Slot
Short-Depth 1U Atom Server Appliance with Front I/O Ports, 1x PCIe Slot
Mini Atom Server Appliance (Optional Rackmount kit), with 1x PCIe Slot.
1U Atom Low Powered Server with 4 hot swap drive bays.
Very Short Depth 1U Server, Intel Xeon E 2200 Series, Single Processor, 2x Internal Hard Drives
Short-Depth 1U Xeon Server Appliance with Front I/O Ports, 1x PCIe Slot
Pedestal/Tower Server, Intel Xeon E 2200 Series, Single Processor, 4x Hot Swap Drive Bays
Short Depth, Intel Xeon E 2200 Series CPU, Single Processor 4U Rackmount Server
Intel Xeon E 2200 Series, 1U Server with lots of Storage Capacity, Dual, Quad or Eight Gigabit LAN Ports, 8x 2.5" Drive bays
Quiet, Green Design, Very Short Depth
1U Rackmount Servers, Intel Xeon E 2200 Series, Single Processor, 4x Hot Swap Drive Bays
Very Short Depth 2U Server, Intel Xeon E 2200 Series, Single Processor, 3x Internal Drive Bays, up to 128Gb DDR4 ECC RAM
Comprehensive I/O connectivity to meet different needs, Dual Intel® Gigabit Ethernet, complete server management with ASUS Control Center
Intel Xeon E 2200 Series Processor, 2U Server, 8 x Hot Swap Drive SATA / SAS Bays
Single Scalable Processor, with lots of Expansion slots and High Capacity Drives - Ideal for SMB uses
Short Depth, Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
6 x PCIE Low Profile, Redundant Power Option, Dual Gigabit, 8+2 x Internal Drives, Dedicated LAN for IPMI Remote Management & Remote KVM
Single AMD Epyc Processor, Short Depth, Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Single AMD Epyc Processor, 8x Hot Swap Drive Bays, Short Depth, Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Ideal for virtualisation, cloud computing, enterprise server. 3x PCI-E 4.0 x16 slots. Intel Ethernet Controller X550 2x 10GbE RJ45. Optional Redundant power supply.
Intel Xeon E 2200 Series Processor, 2U Server, 12 x Hot Swap Drive Bays
Ideal for virtualisation, cloud computing, enterprise server. 2x PCI-E 4.0 x16 slots. Intel® Ethernet Controller X550 2x 10GbE RJ45. Redundant power supplies.
3U Intel Xeon E 2200 Series, Single Processor, 16x Hot Swap SAS/SATA Drive Bays, upto 64Gb DDR4 ECC RAM
Redundant Power, Dedicated Remote Management Port with Fully Featured IPMI & Remote KVM Management
Edge Server – 1U 3rd Gen. Intel Xeon Scalable GPU server system, ideal for AI & Edge applications.
Redundant Power Supply, 4x 3.5"/2.5" SATA hot-swappable HDD/SSD bays, Ultra-Fast M.2 with PCIe Gen3 x4 interface, 2x 1Gb/s LAN ports (Intel® I350-AM2)
8x 2.5" SATA and 2 x 2.5 NVMe hot-swappable HDD/SSD bays, Ultra-Fast M.2 with PCIe Gen3 x4 interface, 1x PCIe Gen4 x16 expansion slot, 2x 1Gb/s LAN ports (Intel® I350-AM2)
Redundant Power Supply, 12x 3.5" and 2 x 2.5" SATA hot-swappable HDD/SSD bays, Ultra-Fast M.2 with PCIe Gen3 x4 interface, 2x 1Gb/s LAN ports (Intel® I350-AM2)
26x 2.5" SATA/SAS hot-swappable HDD/SSD bays, Ultra-Fast M.2 with PCIe Gen3 x4 interface, 6x PCIe Gen4 / Gen3 Expansion Slots, Onboard 12Gb/s SAS expander
4U Intel Xeon E 2200 Series, Single Processor, 24x Hot Swap SAS/SATA Drive Bays
Redundant Power, Dedicated Remote Management Port with Fully Featured IPMI & Remote KVM Management
10x 2.5" NVMe hot-swappable SSD bays, Ultra-Fast M.2 with PCIe Gen4 x4 interface, Redundant Power Supply
12x Drive Bays, Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Redundant Power, Dedicated Remote Management Port with Fully Featured IPMI & Remote KVM Management
Redundant Power Supply, 24x 2.5" NVMe Hot-swappable SSD bays, 2x 2.5" SATA/SAS hot-swappable HDD/SSD, Ultra-Fast M.2 with PCIe Gen3 x4 interface, 2x 1Gb/s LAN ports (Intel® I350-AM2)
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
Up to 4 x NVIDIA ® PCIe Gen4 GPU cards. NVIDIA-Certified system for scalability, functionality, security, and performance. Dedicated management port. Redundant power.
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management
24 + 12 Bays at Rear, Redundant Power, Dedicated Remote Management Port with IPMI & Remote KVM Management
Redundant Power Option, Dedicated Remote Management port with IPMI & Remote KVM Management, 36 Bay
8x PCIe Gen4 expansion slots for GPUs, 2 x 10Gb/s SFP+ LAN ports (Mellanox® ConnectX-4 Lx controller), 2 x M.2 with PCIe Gen3 x4/x2 interface
2U Quad Node, Supports 5G Network Infrastructure, 8x M.2 with PCIe Gen3 x4 interface, 8x Low Profile PCIe x16 Expansion Slots, 8x 1Gb/s LAN ports (Intel® I350-AM2), Short Depth.
2U Quad Node, Supports 5G Network Infrastructure, 4x 2.5" NVMe Hot-swappable SSD Drive Bays, 8x M.2 with PCIe Gen3 x4 interface, 8x Low Profile PCIe x16 Expansion Slots, Short Depth.
2U Quad Node, 24x 2.5" NVMe/SATA Hot-swappable SSD Drive Bays, 8x M.2 with PCIe Gen3 x4 interface, 8x Low profile PCIe x16 Expansion Slots, 8x 1Gb/s LAN ports (Intel® I350-AM2)
20 High performance UP blade servers in a 8U High blade enclosure. Optimised for HPC, virtualisation and cloud computing. PCI-E Gen4 ready for SSD and Network IO.
A single socket server, also known as a one-socket server, is based around a motherboard with a single CPU socket.
Depending on the processing load you require, a one-socket server can be the best option due to its cost-effective nature.
While more cores generally equal more data processing capacity, dual or quad socket motherboards tend to cost significantly more. With single processor solutions you enjoy reduced hardware costs, lessened power demands and reduced cooling requirements, even when taking into account equal performance.
Broadberry single processor servers can be configured to excel for a number of different applications.
There are a variety of reasons to opt for a single socket server over their dual or quad-socket counterparts.
They boast great performance for the price, with a significant amount of cores available per socket and consistently growing.
A single processor server is run on a motherboard with one socket for a CPU. While this means that maximum core-count per server will be limited to the highest core-count CPU available, there is a positive side. In today's landscape, the CPU market offers a number of high-performance processors capable of handling very intensive workloads.
One-socket solutions are often significantly more cost effective than the alternatives. Broadberry servers powered by one CPU start at half the price of solutions powered by two processors.
With the right CPU, single-socket systems reach high performance levels and thrive in even the most computationally intensive environments.
Depending on your requirements, you maybe benefit more from one type of Broadberry single socket solution over another. This is due to the fact that the difference between individual processor server configurations can be meaningful. Factors such as the CPU model, the amount of RAM in the system and a cluster of other variants can affect system performance.
Entry-level servers are ideal for use as general application servers for smaller organisations. Despite being entry level, these cost-effective systems can deliver virtual machines powerful enough for to run development and test environments.
The majority of entry-level solutions support ECC memory. ECC (error-correcting code) memory repairs developing data corruption, pre-emptively prevents potential system crashes and aids in the smooth running of the system.
Mid-range solutions will not break the bank and are more financially viable for smaller businesses. This range of solutions provide higher performance capabilities and enhanced robustness over their entry level server counterparts.
For businesses without large budgets, who do not necessarily require the very top end of computing performance, this is range of systems may be the perfect option.
For larger budgets, these high performance solutions are superb options. With a top-spec processor, a high core-count machine can be created for more intensive workloads. These applications can include scientific simulations and statistical computations. These robust servers can handle large amounts of data and thrive in computationally intensive environments. High-end servers are also suitable for potential scaling and high-speed server clusters for intensive workloads.
The systems within this Broadberry range of solutions can be configured with a variety of processors, each bringing their own advantages and areas of excellence, allowing you to select the CPU that will perform best with your applications.
Intel Atom processors are designed and built to excel at light processing tasks. With an extremely low power consumption and constant server up-time, these processors are perfect if you want a cost-effective and reliable server. Configurable with zero moving parts, these servers are virtually silent and extremely cool.
The solutions in this range are small in size, cause almost no noise pollution and generally maintenance free.
Intel Xeon Scalable processors deliver high performance in spades. Providing huge benefits in performance, power efficiency, virtualization and security, these systems are optimal if you require a powerful, efficient and reliable server that thrives in computationally intensive environments.
Powered by Intel Xeon Scalable processors, these solutions are flexible and able to excel across a variety of applications. With up to 28 Cores per processor, the most powerful CPUs in this range deliver delivers humongous leaps in I/O, memory, storage and network technologies.
A great fit for companies searching for an affordable and efficient system, single socket servers powered by Intel Xeon E processors feature enhanced efficiency, boosted performance, reduced power consumption and up to 40 lanes of PCIe for storage, graphics and network expandability.
Servers powered by AMD EPYC processors deliver the I/O, memory and bandwidth to satisfy your performance needs. Providing up to 64 cores, 4TB of memory, and 128 lanes of PCIe 4.0 connectivity delivering double the I/O performance over PCIe 3.0.
Featuring significant improvements in performance and efficiency, the processors in this range bring the balance to your data center by maximizing performance and minimizing cost.
With over 30 years of experience in this field, Broadberry has provided server technology to some of the largest organisations in the world. These include the likes of Disney, the BBC, NASA, Sky, Toshiba, Toyota, the University of Oxford, the University of Cambridge, ITV, Tesco, Sony and many more.
Our powerful Broadberry online configurator allows you to create the perfect single processor server configuration based on the requirements of your business. With a huge range of features, thousands of possible configuration combinations and a thoroughly meticulous design process which optimizes a solution directly for you, Broadberry solutions are built to help your business thrive.
Before leaving our build and configuration facility, all of our server and storage solutions undergo an extensive 48 hour testing procedure. This, along with the high quality industry leading components that we use ensures all of our systems meet the strictest quality guidelines.
Our main objective is to offer great value, high quality server and storage solutions, we understand that every company has different requirements and as such are able to offer a complete customization service to provide server and storage solutions that meet your individual needs.
We have established ourselves as one of the biggest storage providers in the US, and since 1989 been trusted as the preferred supplier of server and storage solutions to some of the world's biggest brands, including: